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Simulation investigations of the coordinated traffic-responsive signal control strategy TUC with actuation at the local junction level

机译:局部路口驱动下协调交通响应信号控制策略TUC的仿真研究

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Purpose TUC (Traffic-responsive Urban Control), a strategy aiming at providing coordinated traffic-responsive signal control in large-scale urban networks, has demonstrated high efficiency, especially under saturated conditions. Nevertheless, as TUC adopts common cycle times for all junctions at any time, some green time waste may occur at links with low or strongly varying alternative demand, which could be mitigated by enabling local actuation. It is the aim of this paper to investigate potential benefits to TUC performance emerging from such local actuation. Methods Actuation may be performed in various ways: by relocating unused green time to stages serving high demand; or by preserving TUC-ordered offsets; or by combining as much as possible both of these features. To study and compare the performance and efficiency of these alternative ways to actuation under realistic traffic conditions, the AIMSUN microscopic simulation model of the road network of the city center of Chania, Greece, was used. Results Simulation investigations indicated relocating unused green time to stages serving high demand as the most promising way towards a TUC-coordinated locally-actuated control scheme. However, improvements over the TUC strategy by adopting this approach to actuation were moderate. Conclusion As the simulation results may be due to the signal control setup at the particular network under study and/or the examined demand scenarios, further investigations, including tests with other road networks and/or demand patterns are necessary before reaching any final conclusions concerning the best way to locally actuate the TUC-decided signal control plans.
机译:目的TUC(交通响应型城市控制)是一种旨在在大型城市网络中提供协调的交通响应型信号控制的策略,已证明具有很高的效率,尤其是在饱和条件下。但是,由于TUC随时都对所有路口采用通用的循环时间,因此在替代需求较低或变化很大的链路上可能会发生一些绿色时间浪费,可以通过启用本地驱动来减轻这种浪费。本文的目的是研究这种局部驱动对TUC性能的潜在好处。方法致动可以通过多种方式进行:将未使用的绿色时间重新分配到满足高需求的阶段;或保留TUC排序的偏移量;或通过尽可能多地组合这两个功能。为了研究和比较这些替代方式在实际交通条件下的性能和效率,使用了希腊哈尼亚市中心道路网络的AIMSUN微观仿真模型。结果仿真研究表明,将未使用的绿色时间重新分配到满足高需求的阶段,这是实现TUC协调的本地驱动控制方案的最有前途的方法。但是,通过采用这种方法进行驱动对TUC策略的改进是适度的。结论由于仿真结果可能是由于正在研究的特定网络和/或已检查的需求情景下的信号控制设置所致,因此,在得出任何有关该问题的最终结论之前,有必要进行进一步的调查,包括使用其他道路网络和/或需求模式进行测试。本地执行TUC决定的信号控制计划的最佳方法。

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